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Evaluation of a final cover slide at a landfill with recirculating leachate

机译:评估带有循环渗滤液的垃圾填埋场的最终盖玻片

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摘要

A forensic investigation was conducted to determine the mechanism causing the slide of a final cover on a 4:1 (horizontal: vertical) slope at a municipal solid waste (MSW) landfill where leachate had been recirculated. The slide occurred as a veneer displacement along the interface between the geomembrane (GM) and geosynthetic clay liner (GCL). Site observations suggested that elevated gas pressures were a significant contributor to the failure. Laboratory tests were conducted to determine the shear strength parameters of the GM-GCL interface and the reduction in normal stress required to cause displacement of the GM-GCL interface. Hydraulic conductivity and gas permeability of the GCL were also determined. Slope stability analyses were conducted to determine the gas pressure required to cause a slide and the factor of safety that would have existed if the gas pressures was at zero gage. Good agreement was obtained between gas pressures measured in the field, measurements of the reduction in normal stress required to cause sliding on the GM-GCL interface in a large-scale direct shear test, and the gas pressures corresponding to FS = 1 (imminent sliding) from the slope stability analysis. The findings from this study, and a similar case history, illustrate the importance of managing gas at an acceptable level beneath the cover at MSW landfills.
机译:进行了法医调查,以确定导致最终渗滤液在再循环渗滤液的城市固体废物(MSW)垃圾填埋场以4:1(水平:垂直)的坡度滑动的机理。滑动是沿着土工膜(GM)和土工合成材料粘土衬里(GCL)之间的界面出现的单板位移。现场观察表明,气压升高是故障的重要原因。进行了实验室测试,以确定GM-GCL界面的剪切强度参数以及导致GM-GCL界面位移所需的法向应力的减小。还确定了GCL的水力传导率和气体渗透率。进行了边坡稳定性分析,以确定引起滑移所需的气压,以及如果气压为零表压时将存在的安全系数。在现场测量的气压,在大规模直接剪切试验中导致GM-GCL界面滑动所需的正应力减小的测量与对应于FS = 1的气压(即将发生滑动)之间取得了良好的一致性。 )从边坡稳定性分析。这项研究的结果以及类似的案例历史,说明了在城市固体垃圾掩埋场掩护下以可接受的水平管理天然气的重要性。

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